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Microstructure Evolution in Al-Mg Alloys During and After Hot Deformation

  • Raul Perez-Bustamante
  • , Ryann E. Rupp
  • , Andrew J. Weldon
  • , Trevor J. Watt
  • , Ken Takata
  • , Eric M. Taleff

Research output: Chapter in Book/Report/Conference proceedingChapterpeer-review

Abstract

Controlling the micro structure developed during hot rolling is of great importance to controlling final material properties. Changes in processing parameters and chemical composition alter the recovery-recrystallization-grain-growth processes that control micro structure evolution. To better understand these processes in two Al-Mg alloys, cylindrical specimens were subjected to hot compression at temperatures from 300 to 500°C with a fixed strain rate of 1.0 s-1. Upset specimens were immediately quenched by He gas to preserve their deformed microstructures. Specimen sections were then annealed to separate the dynamic and static components of micro structure evolution. Specimen microstructures were characterized by optical and electron microscopy. Grain size and the degree of recrystallization were measured as functions of specimen chemistry, compression-test conditions and annealing conditions. The experimental results are interpreted to better understand the mechanisms of micro structure evolution and to evaluate new paths to microstructure refinement during hot rolling.

Original languageEnglish
Title of host publicationLight Metals 2015
PublisherWiley Blackwell
Pages169-172
Number of pages4
ISBN (Electronic)9781119093435
ISBN (Print)9781119082446
DOIs
StatePublished - Feb 20 2015

Keywords

  • Aluminum
  • Hot deformation
  • Recrystallization

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